UNIFIED FACILITIES GUIDE SPECIFICATIONS

Size: px
Start display at page:

Download "UNIFIED FACILITIES GUIDE SPECIFICATIONS"

Transcription

1 USACE / NAVFAC / AFCEC / NASA UFGS (November 2008) Preparing Activity: USACE Superseding UFGS (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References are in agreement with UMRL dated January 2018 SECTION TABLE OF CONTENTS DIVISION 28 - ELECTRONIC SAFETY AND SECURITY SECTION FIRE ALARM REPORTING SYSTEM, RADIO TYPE 11/08 PART 1 GENERAL 1.1 REFERENCES 1.2 SUBMITTALS 1.3 QUALITY ASSURANCE 1.4 DELIVERY, STORAGE, AND HANDLING 1.5 SPECIAL TOOLS AND SPARE PARTS PART 2 PRODUCTS 2.1 SYSTEM DESCRIPTION 2.2 STANDARD PRODUCTS 2.3 NAMEPLATES 2.4 RADIO FIRE ALARM TRANSMITTER (TRANSCEIVER) Frequency Allocation Power Requirements Battery Power Battery Duration Battery Supervision Functional Requirements Interfacing Indicators and Controls Generation of Signals Power Output Memory Transmission Confirmation Transmitter Identity Code Message Designations Master Message Test Message Tamper Message Designation Trouble Message Designation Transmitter Housings Lock Mounting Operating Panel Labeling SECTION Page 1

2 2.4.5 Environmental Operating Requirements Painting 2.5 RADIO TRANSMITTER INTERFACE DEVICE Enclosure Indicators Access Mounting Inputs/Outputs 2.6 RADIO FIRE ALARM MONITORING BASE STATION Receiver (Transceiver) System Transmitter Section Receiver Section Fire Alarm Console Audible Fire Alarm Visual Display Console Memory Console Supervision Receiver Supervision Manual Battery Test Electrical Connections Antenna System Grounding Conductors Communication Links 2.7 FIRE ALARM SYSTEM PERIPHERAL EQUIPMENT Repeaters Radio Fire Alarm Transmitter Box Location Light Conduit Ground Rods Power Supply Wiring PART 3 EXECUTION 3.1 EXAMINATION 3.2 INSTALLATION Power Supply for the System Wiring for Systems 3.3 OVERVOLTAGE AND SURGE PROTECTION 3.4 GROUNDING 3.5 TRAINING 3.6 TESTING Performance Testing Acceptance Test -- End of Section Table of Contents -- SECTION Page 2

3 USACE / NAVFAC / AFCEC / NASA UFGS (November 2008) Preparing Activity: USACE Superseding UFGS (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References are in agreement with UMRL dated January 2018 SECTION FIRE ALARM REPORTING SYSTEM, RADIO TYPE 11/08 NOTE: This guide specification covers the requirements for radio transmitted fire alarm reporting systems. Adhere to UFC Unified Facilities Guide Specifications (UFGS) Format Standard when editing this guide specification or preparing new project specification sections. Edit this guide specification for project specific requirements by adding, deleting, or revising text. For bracketed items, choose applicable item(s) or insert appropriate information. Remove information and requirements not required in respective project, whether or not brackets are present. Comments, suggestions and recommended changes for this guide specification are welcome and should be submitted as a Criteria Change Request (CCR). PART 1 GENERAL 1.1 REFERENCES NOTE: This paragraph is used to list the publications cited in the text of the guide specification. The publications are referred to in the text by basic designation only and listed in this paragraph by organization, designation, date, and title. Use the Reference Wizard's Check Reference feature when you add a Reference Identifier (RID) outside of the Section's Reference Article to automatically place the reference in the Reference Article. Also use the Reference Wizard's Check Reference feature to update the issue dates. SECTION Page 3

4 References not used in the text will automatically be deleted from this section of the project specification when you choose to reconcile references in the publish print process. The publications listed below form a part of this specification to the extent referenced. The publications are referred to within the text by the basic designation only. INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS (IEEE) IEEE C IEEE C IEEE C (1988) Standard for Zinc-Coated Ferrous Ground Rods for Overhead or Underground Line Construction (2002; R 2008) Guide on the Surges Environment in Low-Voltage (1000 V and Less) AC Power Circuits (2002) Recommended Practice on Characterization of Surges in Low-Voltage (1000 V and Less) AC Power Circuits NATIONAL ELECTRICAL MANUFACTURERS ASSOCIATION (NEMA) NEMA ICS 1 (2000; R 2015) Standard for Industrial Control and Systems: General Requirements NATIONAL FIRE PROTECTION ASSOCIATION (NFPA) NFPA 70 (2017; ERTA ; TIA 17-1; TIA 17-2; TIA 17-3; TIA 17-4; TIA 17-5; TIA 17-6; TIA 17-7; TIA 17-8; TIA 17-9; TIA 17-10; TIA 17-11; TIA 17-12; TIA 17-13; TIA 17-14) National Electrical Code NFPA 72 NFPA 780 (2016) National Fire Alarm and Signaling Code (2017) Standard for the Installation of Lightning Protection Systems TELECOMMUNICATIONS INDUSTRY ASSOCIATION (TIA) TIA-222 (2005G; Add ; Add ; Add ; Add ; R 2014; R 2016) Structural Standards for Steel Antenna Towers and Antenna Supporting Structures U.S. NATIONAL ARCHIVES AND RECORDS ADMINISTRATION (NARA) 47 CFR 15 Radio Frequency Devices UNDERWRITERS LABORATORIES (UL) UL 1242 (2006; Reprint Mar 2014) Standard for Electrical Intermediate Metal Conduit -- SECTION Page 4

5 Steel UL 467 UL 6 UL 797 (2013; Reprint Jun 2017) UL Standard for Safety Grounding and Bonding Equipment (2007; Reprint Nov 2014) Electrical Rigid Metal Conduit-Steel (2007; Reprint Mar 2017) UL Standard for Safety Electrical Metallic Tubing -- Steel 1.2 SUBMITTALS NOTE: Review submittal description (SD) definitions in Section SUBMITTAL PROCEDURES and edit the following list to reflect only the submittals required for the project. The Guide Specification technical editors have designated those items that require Government approval, due to their complexity or criticality, with a "G." Generally, other submittal items can be reviewed by the Contractor's Quality Control System. Only add a G to an item, if the submittal is sufficiently important or complex in context of the project. For submittals requiring Government approval on Army projects, a code of up to three characters within the submittal tags may be used following the "G" designation to indicate the approving authority. Codes for Army projects using the Resident Management System (RMS) are: "AE" for Architect-Engineer; "DO" for District Office (Engineering Division or other organization in the District Office); "AO" for Area Office; "RO" for Resident Office; and "PO" for Project Office. Codes following the "G" typically are not used for Navy, Air Force, and NASA projects. Use the "S" classification only in SD-11 Closeout Submittals. The "S" following a submittal item indicates that the submittal is required for the Sustainability enotebook to fulfill federally mandated sustainable requirements in accordance with Section SUSTAINABILITY REPORTING. Choose the first bracketed item for Navy, Air Force and NASA projects, or choose the second bracketed item for Army projects. Government approval is required for submittals with a "G" designation; submittals not having a "G" designation are for [Contractor Quality Control approval.] [information only. When used, a designation following the "G" designation identifies the office that will review the submittal for the Government.] Submittals with an "S" are for inclusion in the Sustainability enotebook, in conformance to Section SUSTAINABILITY SECTION Page 5

6 REPORTING. Submit the following in accordance with Section SUBMITTAL PROCEDURES: SD-02 Shop Drawings Fire Alarm Reporting System; G[, [ ]] Wiring for Systems; G[, [ ]] SD-03 Product Data Battery Spare Parts Qualifications Training Test Procedures SD-06 Test Reports Testing SD-07 Certificates Equipment SD-10 Operation and Maintenance Data Fire Alarm Reporting System; G[, [ ]] 1.3 QUALITY ASSURANCE Provide the services of a Registered Professional Engineer with at least 4 years of current experience in the design of fire protection and detection systems. Submit the qualifications, with verification of experience and license number, for this engineer. 1.4 DELIVERY, STORAGE, AND HANDLING Protect all equipment delivered and placed in storage from the weather, humidity and temperature variations, dirt, dust, and other contaminants. 1.5 SPECIAL TOOLS AND SPARE PARTS Furnish special tools necessary for the maintenance of the equipment. Submit certified copies of current applicable approvals or listings issued by UL, FM or other nationally recognized testing laboratory showing compliance with applicable NFPA standards. Submit spare parts data for each different item of material and equipment specified, after approval of detail drawings, and not later than [ ] months prior to the date of beneficial occupancy. Data shall include a complete list of parts and supplies with the current unit prices and source of supply and a list of the parts recommended by the manufacturer to be replaced after [1] [ ] year of service. Provide one spare set of fuses of each type and size required and 5 spare lamps of each type. PART 2 PRODUCTS 2.1 SYSTEM DESCRIPTION SECTION Page 6

7 NOTE: Radio link supervision may be by periodic reporting of radio fire alarm transmitters or by periodic polling of all transmitters by the radio fire alarm receiver. The total number of transmitters on any one frequency and their polling rate in a two-way system must be determined and checked to ensure code compliance. The following definitions are given to help clarify the use of the words transmitter and receiver in this specification. 1. "Fire Alarm Transmitter" refers to any device that transmits a fire alarm message back to the fire alarm receiver at the alarm monitoring station. 2. "Radio Transmitter" is an electronic device that generates a coded RF signal. 3. "Radio Fire Alarm Transmitter" refers to a device that uses radio signals to transmit a fire alarm message back to the alarm monitoring station. The radio fire alarm transmitter may operate with either one-way or two-way data transmission. For one-way data transmission, the radio fire alarm transmitter would incorporate a radio transmitter, antenna, cables, power supply, message encoder, and possibly an interface circuit. a. The radio fire alarm transmitter generates and sends a coded alarm when an alarm is received at the transmitter. The signal is received at the radio fire alarm receiver and an alarm is given. b. Radio fire alarm transmitters that use two-way data transmissions have all the same components as the one-way system, but, in addition, they have a receiver and controller. They operate by waiting for the radio fire alarm receiver to send them a radio signal to report. The radio fire alarm transmitter then sends back a signal reporting any alarms. Another method involves two-way radio transmission systems which transmit signals as soon as they are received. 4. "Fire Alarm Receivers" refer to equipment that receives fire alarm messages from one or more fire alarm transmitters. 5. "Radio Receiver" is an electronic device that detects radio signals and generates an alarm message. 6. "Radio Fire Alarm Receiver" is a system that receives fire alarm signals, displays, and records the alarm messages. It may simply listen for any alarm messages (one-way data transmission) or it may sequentially transmit a radio signal asking each radio fire alarm transmitter to report any alarms (two-way data transmission). When an addition to an existing system is required, SECTION Page 7

8 provide the make, model number, and other pertinent information to the designer. This will eliminate most of this specification because the additional interfaces have to be compatible with the existing central radio fire alarm reporting system. NOTE: Insert appropriate NFPA Standard in blank. Provide a central reporting system complying with [NFPA 72] [ ]. The equipment furnished shall be listed by Underwriters Laboratories, or Factory Mutual Engineering and Research, or be approved or listed by a nationally recognized testing laboratory. a. Furnish tags with stamped identification numbers for keys and locks. Locks shall be keyed alike. The radio system shall report alarms to the radio fire alarm monitoring base station. The system shall be a completely supervised radio type fire alarm reporting system. b. Submit detail drawings, signed by the Registered Professional Engineer, consisting of a complete list of equipment and material, including manufacturer's descriptive and technical literature, catalog cuts, and installation instructions. Note that the contract drawings show layouts based on typical detectors. Check the layout based on the actual detectors to be installed and make any necessary revisions in the detail drawings. c. Detail drawings shall also contain complete wiring and schematic diagrams for the equipment furnished, equipment layout, and any other details required to demonstrate that the system has been coordinated and will properly function as a unit. The system shall indicate the area of alarm. The radio communication link shall be supervised and operated in accordance with NFPA 72. Electrical supervision shall be provided for all circuits and for all positions of interface panel control switches. d. Submit [6] [ ] complete copies of operating instructions outlining step-by-step procedures required for system startup, operation, and shutdown. The instructions shall include the manufacturer's name, model number, service manual, parts list, and brief description of all equipment and their basic operating features. e. Submit [6] [ ] copies of maintenance instructions listing routine maintenance procedures, possible breakdowns and repairs, and troubleshooting guide. The instructions shall include conduit layout, equipment layout and simplified wiring, and control diagrams of the system as installed. Instructions shall be approved prior to training. 2.2 STANDARD PRODUCTS Provide material and equipment which are the standard products of a manufacturer regularly engaged in the manufacture of the products and that essentially duplicate items that have been in satisfactory use for at least 2 years prior to bid opening. Equipment shall be supported by a service organization that can provide service within 24 hours. 2.3 NAMEPLATES Major components of equipment shall have the manufacturer's name, address, SECTION Page 8

9 type or style, voltage and current rating, and catalog number on a noncorrosive and nonheat-sensitive plate which is securely attached to the equipment. 2.4 RADIO FIRE ALARM TRANSMITTER (TRANSCEIVER) NOTE: Transceiver is a radio device that receives an interrogating or challenging radio signal and automatically transmits a response on the same or a different frequency. Radio Fire Alarm Transmitter (Transceiver) shall be compatible with the Radio Fire Alarm Monitoring Base Station. The transmitter shall be all solid state and comply with applicable portions of 47 CFR 15 governing type acceptance. All transmitters of a common configuration shall be interchangeable with the other devices furnished by the manufacturer. Each transmitter [and interface device] shall be the manufacturer's current commercial product completely assembled, wired, tested at the factory, and delivered ready for installation and operation Frequency Allocation NOTE: Frequency assignment is made by the base's communications Officer. The frequency must be reserved in advance. Multiple frequencies may be needed to meet response time requirements. Polling type systems will need separate polling frequencies. The transmitters shall operate on a frequency of [ ] MHz Power Requirements NOTE: Delete requirements for manual street boxes if not applicable. Powe transmitters by a combination of locally available 120 Vac, and sealed [nickel-cadmium] [or] [lead-acid] type batteries requiring no additional water. [Transmitters used in manual street box configuration [as indicated] shall be powered by battery only.] In the event of loss of 120 Vac power, the transmitter shall automatically switch to battery operation. The switchover shall be accomplished with no interruption of protective service, without adversely affecting the battery-powered capabilities, and shall cause the transmission of a trouble message in no less than [ ] seconds. Upon restoration of ac power, transfer back to normal ac power supply shall be automatic and the battery shall be recharged. The converter/battery charger shall be installed within the transmitter housing. Power supply transient filtering shall be provided Battery Power The battery package shall be capable of supplying all the power requirements for a given transmitter. Submit substantiating battery calculations for supervisory and alarm power requirements. Ampere-hour SECTION Page 9

10 requirements for each system component, each panel component and the battery recharging period shall be included Battery Duration Radio fire alarm transmitter standby battery capacity shall provide sufficient power to operate the transmitter in a normal standby status for a minimum of 60 hours and shall be capable of transmitting alarms during that period. The capacity for battery-only powered transmitters shall be 6 months before recharging is necessary Battery Supervision Each radio fire alarm transmitter shall constantly monitor and supervise its own battery powered supply. A low-battery condition shall be reported when battery voltage falls below 85 percent of the rated voltage Functional Requirements Interfacing Indicators and Controls Transmitters shall incorporate the provisions for auxiliary interconnection to existing interior alarm systems Generation of Signals Each transmitter shall be a standard design which allows the immediate transmission of all initiated signals Power Output NOTE: The designer should provide the necessary data to determined the required RF power level; this may require a site visit. The radio frequency (RF) power output of each transmitter shall be sufficient for reliable alarm reporting. The minimum RF power output shall be [1] [ ] watt Memory Transmitters shall have memory capability. Multiple, simultaneous alarms shall not result in the loss of any messages. Messages shall be stored until they are transmitted Transmission Confirmation NOTE: Use with fire alarm boxes only. When a signal is initiated at a public box (push button or pull lever), the transmitter shall produce an audible or visual indication that the transmitter is operating and that a signal is being sent. SECTION Page 10

11 Transmitter Identity Code Each transmitter shall transmit a distinct identity code number as part of all signals emanating from the transmitter. The identity code shall allow for no less than a [ ] digit code selection and be transmitted not less than three complete rounds (cycles) Message Designations Each transmitter shall allow as a minimum no less than 10 [ ] distinct and individually identifiable message designations as to the types or causes of transmitter actuation Master Message Master messages shall be transmitted upon automatic actuation of the transmitter. The building and zone causing actuation shall be individually identified as part of this transmission. The transmitter shall be capable of identifying and transmitting a minimum of [ ] master (zone) messages Test Message Test message shall be capable of both manual and automatic actuation. When a transceiver method is employed, it shall provide for automatic interrogation at preselected periods or continuous automatic interrogation in accordance with the governing standard. Additionally, transceiver systems shall provide for selective interrogation at times determined by the user. Testing the automatic test actuation shall occur a minimum of once in each [24-] [ ] hour period, at an optionally preselected time. Stability of the electronic actuating device shall be plus or minus 1 minute per month within the temperature range stipulated for system operation. Actuation of the "Test" message designation, regardless of initiating means, shall cause no less than 1 complete message to be sent Tamper Message Designation The tamper message shall be automatically transmitted when a tamper switch is tripped in the transmitter housing Trouble Message Designation Trouble message shall be automatically transmitted in the event of a failure in excess of 1 minute of the main operating power source of the transmitter Transmitter Housings The housings on transmitters shall be fabricated from corrosion-resistant cast metal or suitable substitute which has the physical strength sufficient to ward off physical damage normally expected to be received by vandalism. The housing shall be sealed against the entry of moisture, dust, dirt, insects, and other foreign objects. Exterior housings shall be NEMA 4X Lock Internal components shall be protected from vandalism by a tamper-proof lock on the transmitter housing. The housing shall allow access to all internal components for testing, servicing, and replacement at the SECTION Page 11

12 installation site Mounting NOTE: Choose the type of mounting most suited for application of design. Transmitter housings shall be designed for universal mounting on walls, poles, or pedestals. Mounting shall utilize either lag bolts, anchor bolts, stainless steel banding, mounting brackets, or a shackle/bolt combination, as applicable to the specific installation Operating Panel NOTE: Use with manual street boxes only. Each publicly accessible transmitter shall have an operating panel that incorporates a dedicated signal initiating device (pull hook or push button) clearly identified for the initiation of "FIRE" signals. The device shall be protected with a conventional spring-loaded, "fast-action" break-glass, or similar pull-type door that allows observation of the actuation device when in the closed position. The door shall be fabricated and finished in a manner consistent with that required of the main housing Labeling NOTE: Use with manual street boxes only. Each publicly accessible transmitter shall be labeled on both sides and on the front surface with the word "FIRE." The label shall be white with red lettering Environmental Operating Requirements NOTE: Check local condition for design wind gust and ice loading. Lowest design wind speed is 160 km/hour 100 mph; typical design wind speed is 200 km/hour 125 mph. The transmitter shall be designed for reliable outside operation in an ambient temperature range of [-30] [ ] to [60] [ ] degrees C [-22] [ ] to [140] [ ] degrees F. Transmitters shall be corrosion-resistant and designed for reliable operation under adverse climatic conditions including [160.9] [ ] km/hour [100] [ ] mph winds, ice, rain, and snow storms Painting Radio fire alarm transmitter [and interface housings] shall be factory painted. The finish color shall be [fire engine red] [ ]. Painted surfaces damaged during installation shall be repainted to match existing SECTION Page 12

13 paint. 2.5 RADIO TRANSMITTER INTERFACE DEVICE NOTE: If a radio transmitter interface device is not required, delete this paragraph. The interface device shall provide a means of converting the signals that are available from the local control equipment into a form that is compatible with the transmitter inputs, while still maintaining electrical supervision of the entire system. Interface devices shall be utilized when direct connection between local control equipment and the transmitter is not possible. Interface devices shall be completely assembled, wired, tested at the factory, and delivered ready for installation and operation Enclosure NOTE: Use with manual street boxes only. When furnished as an independent self-contained device, the interface device shall be incorporated into an enclosure conforming to NEMA ICS 1or other national standard as required by its location Indicators NOTE: Use with manual street boxes only. Indicators shall be provided to indicate alarm and trouble conditions and shall consist of a red fire alarm and an amber trouble light. The indicators shall be designed to ensure visibility during daylight hours and to indicate the reporting zone Access Switches and other controls shall not be accessible without the use of a key. Access to controls shall be by unlocking and opening a panel or door Mounting NOTE: Choose the type of mounting most suited for application of design. Interface housings shall be designed for universal mounting on walls, poles, or pedestals. Mounting shall utilize either lag bolts, anchor bolts, stainless steel banding, mounting brackets, or a shackle/bolt combination, as applicable to the specific installation Inputs/Outputs Each interface panel shall provide, as a minimum, the number of alarm circuit inputs and outputs indicated. Each input circuit shall be arranged SECTION Page 13

14 so that the alarm signals shall override the trouble signals. 2.6 RADIO FIRE ALARM MONITORING BASE STATION NOTE: Radio link supervision may be by periodic reporting of radio fire alarm transmitters or by periodic polling of all transmitters by the radio fire alarm receiver. The total number of transmitters on any one frequency and the polling rate of the transmitters in a two-way system must be determined and checked to ensure code compliance Receiver (Transceiver) System [Two identical] [One] master radio fire alarm receiving (transceiver) system compatible with transmitter frequency shall be provided. The system shall be completely assembled, wired, tested at the factory, and delivered ready for installation and operation. Transceivers shall be solid-state design and shall use frequency modulation. The transceiver can be a single integrated unit, or it may consist of separate transmitter and receiver modules with a common power supply, amplifier, and control unit Transmitter Section Transmitter shall operate on a frequency of [ ] MHz. Frequency stability shall be within percent over the operating temperature range. Transmitter shall be designed to work into a 50-ohm load. Frequency deviation shall be less than or equal to 5 khz. Audio response shall be within plus 1 db and minus 3 db over the 300 Hz to 3,000 Hz range Receiver Section Receiver antenna input impedance shall be 50 ohms. Receiver shall be tuned to a frequency assignment of [ ] mhz. Receiver shall have no more than 5 percent audio distortion measured at 1,000 Hz. Receiver shall have a noise level not greater than minus 50 db below the signal level. Receiver output shall be compatible with the associated device Fire Alarm Console Console shall contain a complete and independent fire alarm receiving system, consisting of, as a minimum, a radio receiver/transmitter, signal to message decoder, audio alarm signaling devices, audio alarm silence switch, visual display, alarm reset switch(es), alarm recording printer, primary and emergency power supplies, power supply monitors, memory devices, and all necessary interconnecting cables Audible Fire Alarm The audible alarm signaling devices used to indicate the receipt of fire alarm messages shall produce a unique sound. The device shall be internally mounted in the console and shall be activated upon receipt of all fire alarm signals. The audible devices used to indicate the receipt of transmitter/interface trouble messages, including tamper and low-battery voltage, shall be separate and distinct from the device used to denote receipt of fire alarm messages. SECTION Page 14

15 Visual Display NOTE: Listed displays are minimum requirements, but if additional visual displays are required, such displays must be added to the list. Console display shall indicate, as a minimum, the originating transmitter identity code number and shall include the following message designations: a. Fire b. Trouble c. Battery d. Test e. Tamper f. Master Zone [ ] thru [ ] Console Memory Console shall have a memory buffer capable of retaining a minimum of [500] [ ] transmitter codes, together with the specific message designations associated with each transmitter. The system shall reject any received message not matching the programmed transmitter codes where such message identification code is not stored in the system. Upon command, the console shall display and print a summary of transmitters which have transmitted a low-battery or trouble message, or failed to transmit a message during the previous 24 [ ]-hour test period. Any incoming transmitter signal shall pre-empt the command display and printout function, and be processed, displayed, and printed. The 24-hour memory shall not be purged and shall always be current and available. Transmitter memory data shall not be lost in the event of a total loss of operating or emergency power supplies Console Supervision The supervisory system shall provide constant supervision of the operating conditions of the console. Indicators shall be provided for each major component, and an audible signal shall be produced in the event of failure of any major component. A switch shall be provided to silence the audible trouble signal Receiver Supervision The supervisory system shall provide constant supervision and display of the operating condition of the radio receivers, and shall indicate an abnormal condition when a radio fire alarm transmitter carrier lasting more than 15 seconds is detected. The receiver's ability to properly receive and decode an incoming signal shall be tested at least once every [ ] minutes Manual Battery Test Console shall have a switch to manually place the console on emergency battery power for test purposes Electrical Connections Console shall be designed with modular components to allow interchange of components for maintenance purposes. Primary power cables shall SECTION Page 15

16 incorporate positive twist-lock connections. Interconnecting cables and connectors shall be compatible with computer quality signal data transmission Antenna System NOTE: The antenna for the dual transmitter and receivers shall be installed with a maximum vertical separation. The designer must check local conditions for design wind gust and ice loading. The lowest design wind speed is 160 km per hour 100 mph; typical design wind speed is 200 km per hour 125 mph). The antenna system shall utilize vertical polarization antennas, communication links between transmitters/receivers and antennas, and matching networks as needed for the proper coverage. The antenna system shall be either omni-directional or shaped-coveraged as selected by the Contractor based on the topography. The antenna system and cabling shall be furnished to provide adequate system gain. The antennas shall be capable of withstanding the environmental conditions of [200] [ ] km/hour [125] [ ] mph wind and [13 mm 1/2 inch radial] [ ] ice without failure. Lightning protection shall comply with NFPA 780. Antenna supporting structures shall comply with TIA Grounding Conductors Antenna grounding conductors shall be minimum 32-strand, No. 17 AWG copper Communication Links Transmission line between the transmitter/receiver and the antenna shall be 50-ohm impedance rated for the transmitter output power. As a minimum, cable shall exhibit an attenuation not exceeding 1.1 db per 30.5 m 100 feet at 200 mhz. 2.7 FIRE ALARM SYSTEM PERIPHERAL EQUIPMENT NOTE: Check the terrain and distances to determine if a repeater will be needed to transmit a signal from a remote location to the main control console Repeaters Repeaters shall be provided where indicated or required to meet system requirements. The repeater shall receive on [ ] MHz and transmit on [ ] mhz. The receiver and transmitter sections shall conform to the requirements specified for transceivers. Two-way data transmission shall be relayed between the base station and remote stations. Repeater shall utilize a bandpass-type duplexer and one antenna, or multiple-bandpass cavity filters and multiple antennas. The duplexer or filter cavities shall isolate the receiver from transmitter spurious noise and prevent receiver desensitization. The duplexer or filter cavities shall be rated to handle the output power of the transmitter. Repeater shall be keyed with tone-encoded control circuit. A transmitter time-out circuit shall be SECTION Page 16

17 provided to prevent system lockup Radio Fire Alarm Transmitter Box Location Light NOTE: Use with fire alarm boxes only. Delete paragraph where a light is not required. Do not use for radio fire alarm transmitters that operate on batteries only. Each indicated transmitter providing publicly accessible actuating functions shall be provided with a vapor-tight, incandescent type light fixture constructed of a flame retardant, nonplastic, polycarbonate material with a threaded ruby globe. The light shall be supported with 13 mm 1/2 inch galvanized steel conduit and located approximately 300 mm 1 foot above the box. The light shall be provided with an incandescent, 50-watt, 120-volt extended service lamp. Transmitters which are powered by battery only shall not be equipped with location lights Conduit Conduit and fittings shall comply with UL 6, UL 1242, and UL Ground Rods NOTE: Designer will determine the size, type, and number of ground rods to be used based on local conditions, earth resistivity data, and on the size and type of the electrical installation. Copper-clad steel rods will be specified for normal conditions. Zinc-coated steel or stainless steel rods will be used where low soil resistivities are encountered and galvanic corrosion may occur between adjacent underground metallic masses and the copper-clad rods. Stainless steel rods have a longer life than the zinc-coated steel, but use of zinc-coated steel must be justified based on the higher cost. Rods 16 mm 5/8 inch in diameter and 2.5 m 8 feet in length are generally acceptable; however, in rocky soils 19 mm 3/4 inch rods shall be specified. In high resistivity soils, 3 m 10 foot or sectional rods may be used to obtain the required resistance to ground. Where rock is encountered, additional rods, a counterpoise, or ground grid may be necessary. Coordinate and standardize rod selection for individual facilities with other specification sections. Ground rods shall be of [copper-clad steel conforming to UL 467] [zinc-coated steel conforming to IEEE C135.30] [solid stainless steel not less than [16] [19] mm [5/8] [3/4] inch in diameter by [2.5] [3] m [8] [10] feet in length] [of the sectional type] Power Supply SECTION Page 17

18 NOTE: Locations with automatic backup power generation will require as a minimum 4 hours backup. The operating power for the system shall be single phase taken from the building electric service as specified in paragraph Power Supply for the System. Emergency backup power shall be provided by sealed [lead-acid] [or] [nickel-calcium] type batteries requiring no additional water. The charging system shall recharge fully discharged batteries within 12 hours and maintain the batteries in the fully charged state. The battery shall have the capacity to operate the system for not less than 48 hours under maximum normal load with the power supply to the charger disconnected Wiring Wiring shall be in accordance with NFPA 70 and as indicated. Station wiring shall be color coded. PART 3 EXECUTION 3.1 EXAMINATION After becoming familiar with all details of the work, verify all dimensions in the field, and advise the Contracting Officer of any discrepancy before performing the work. 3.2 INSTALLATION Perform installation as shown and in accordance with the manufacturer's recommendations, unless otherwise specified. Provide all necessary interconnections, services, and adjustments required for a complete and operational system. Electrical work shall be in accordance with NFPA Power Supply for the System Provide a single dedicated branch-circuit connection for supplying power to the fire alarm system. The backup power supply shall be automatically energized upon failure of the normal power supply Wiring for Systems Wiring for systems shall be installed in rigid conduit, intermediate metallic conduit, or electric metallic tubing. The conductors for the fire alarm system shall not be installed in conduits, junction boxes, or outlet boxes with conductors of lighting and power systems. The sum of the cross-sectional areas of individual conductors shall not exceed 40 percent of the interior cross-sectional area of the conduit. Conduit shall comply with NFPA 70. Provide ample gutter space to accommodate necessary wiring. Submit detail point-to-point wiring diagram, signed by the Registered Professional Engineer, showing all points of connection. Diagram shall include connections between system devices, appliances, control panels, supervised devices, an all equipment that is activated or controlled by the panel. 3.3 OVERVOLTAGE AND SURGE PROTECTION Equipment connected to alternating current circuits shall be protected from surges in accordance with IEEE C , IEEE C and NFPA 70. Cables and conductors which serve as communications links, except fiber optics, SECTION Page 18

19 shall have surge protection circuits installed at each end. Fuses shall not be used for surge protection. 3.4 GROUNDING Ground rods shall not protrude more than 150 mm 6 inches above grade. Noncurrent-carrying metallic parts associated with radio fire alarm equipment shall have a maximum resistance to solid "earth" ground not to exceed 25 ohms. 3.5 TRAINING Conduct a training course for operating staff in the building where the system is installed as designated by the Contracting Officer. The training period shall consist of [1 training day] [[ ] training days], [8] [ ] hours per day and shall start after the system is functionally completed but prior to the final acceptance tests. The field instructions shall cover all of the items contained in the approved operating and maintenance instructions. 3.6 TESTING Submit test reports in booklet form showing field tests performed to prove compliance with the specified performance criteria, upon completion and testing of the installed system. Each test report shall document all readings, test results, and indicate the final position of controls. Notify the Contracting Officer 30 days before the performance and acceptance tests are to be conducted and submit the test procedures to be used. Submit detailed test procedures for the fire alarm reporting system [30] [ ] days prior to performing system tests. The test procedures shall be signed by the Registered Professional Engineer. Perform the tests in the presence of the Contracting Officer under the supervision of the fire alarm system manufacturer's qualified representative. Furnish all instruments and personnel required for the tests Performance Testing Upon completion of the installation, the system shall be subjected to a complete functional and operational performance test. Test shall determine that the system is free from grounded, shorted, or open circuits. When all corrections have been made, the system shall be retested to assure that it is functional. Copies of performance test reports shall be submitted in accordance with paragraph SUBMITTALS Acceptance Test NOTE: Listed tests are minimum required. If additional tests are required such tests must be added to the list. The testing shall be in accordance with NFPA 72. The recommended tests in NFPA 72 shall be considered mandatory and shall verify that all previous deficiencies have been corrected. The tests shall include the following: a. Tests to indicate there are no grounded, shorted, or open circuits. b. Tests of each radio fire alarm transmitter/receiver/transceiver/ SECTION Page 19

20 repeater. c. Tests of radio fire alarm monitoring base station for all required functions. d. Tests of normal and emergency power supplies. -- End of Section -- SECTION Page 20

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 75.00 10 (November 2008) ----------------------------------- Preparing Activity: USACE Superseding UFGS-28 31 75.00 10 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UFGS (August 2004) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (August 2004) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 49 (April 2006) -------------------------- Preparing Activity: NAVFAC Replacing without change UFGS-13856 (August 2004) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-21 21 03.00 10 February 2009) ---------------------------------- Preparing Activity: USACE Superseding UFGS-21 21 03.00 10 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-26 52 00.00 40 (November 2017) ----------------------------------- Preparing Activity: NASA Superseding UFGS-26 52 00.00 40 (August 2014) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 83 00.00 20 (April 2006) -------------------------------- Preparing Activity: NAVFAC Replacing without change UFGS-15768N (September 1999) UNIFIED FACILITIES GUIDE

More information

UFGS (August 2011) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (August 2011) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-26 28 21.00 40 (August 2014) --------------------------------- Preparing Activity: NASA Superseding UFGS-26 28 21.00 40 (August 2011) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UFGS (November 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (November 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-26 28 21.00 40 (August 2008) ----------------------------------- Preparing Activity: NASA Superseding UFGS-26 28 21.00 40 (November 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 02.00 20 (February 2010) ----------------------------------- Preparing Activity: NAVFAC Superseding UFGS-28 31 02.00 20 (November 2009) UNIFIED FACILITIES GUIDE

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 82 43.00 40 (May 2017) --------------------------------- Preparing Activity: NASA Superseding UFGS-23 82 43.00 40 (August 2014) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 82 46.00 40 (May 2017) --------------------------------- Preparing Activity: NASA Superseding UFGS-23 82 46.00 40 (August 2014) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-10 44 16 (May 2015) ------------------------ Preparing Activity: NASA Superseding UFGS-10 44 16 (May 2012) UNIFIED FACILITIES GUIDE SPECIFICATIONS References are in agreement

More information

UFGS (February 2011) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (February 2011) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-23 82 43.00 40 (August 2011) ----------------------------------- Preparing Activity: NASA Superseding UFGS-23 82 43.00 40 (February 2011) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 20 02 (November 2008) ----------------------------- Preparing Activity: USACE Superseding UFGS-13729 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-13 21 26 (February 2016) ----------------------------- Preparing Activity: NAVFAC Superseding UFGS-13 21 26 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 22 13.35 40 (February 2017) ----------------------------------- Preparing Activity: NASA Superseding UFGS-23 22 13.35 40 (February 2014) UFGS-23 22 13.35 (May 2010)

More information

UFGS (August 2008) UFGS (January 2007) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (August 2008) UFGS (January 2007) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-23 82 46.00 40 (February 2011) ----------------------------------- Preparing Activity: NASA Superseding UFGS-23 82 46 (August 2008) UFGS-40 41 13.13 40 (January 2007)

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-42 22 16.00 40 (August 2017) --------------------------------- Preparing Activity: NASA Superseding UFGS-42 22 16.00 40 (August 2014) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UFGS (May 2010) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (May 2010) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-23 22 13.35 40 (February 2011) ----------------------------------- Preparing Activity: NASA Superseding UFGS-23 22 13.35 (May 2010) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UFGS (June 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (June 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-10 44 16 (May 2009) ------------------------- Preparing Activity: NASA Superseding UFGS-10 44 16 (June 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References are in

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 33.13 20 (April 2006) -------------------------------- Preparing Activity: NAVFAC Replacing without change UFGS-13853N (August 2003) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-33 58 00 (April 2008) -------------------------- Preparing Activity: USACE Superseding UFGS-33 58 00 (April 2007) UNIFIED FACILITIES GUIDE SPECIFICATIONS References are

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 54 16.00 10 (April 2008) -------------------------------- Preparing Activity: USACE Superseding UFGS-23 54 16.00 10 (January 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

SECTION AUTOMATIC TRANSFER SWITCHES

SECTION AUTOMATIC TRANSFER SWITCHES PART 1 - GENERAL 1.1 DESCRIPTION SECTION 26 36 23 SPEC WRITER NOTE: Use this section only for NCA projects. Delete between //--// if not applicable to project. Also, delete any other item or paragraph

More information

SECTION AUTOMATIC TRANSFER SWITCHES

SECTION AUTOMATIC TRANSFER SWITCHES PART 1 - GENERAL 1.1 DESCRIPTION SECTION 26 36 23 This section specifies the furnishing, complete installation, and connection of automatic transfer switches. 1.2 RELATED WORK A. Section 14 21 00, ELECTRIC

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 13.00 40 (February 2017) ----------------------------------- Preparing Activity: NASA Superseding UFGS-28 31 13.00 40 (May 2013) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 64.00 10 (August 2009) --------------------------------- Preparing Activity: USACE Superseding UFGS-28 31 64.00 10 (November 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

CONTENTS AUTOMATIC TRANSFER SWITCHES

CONTENTS AUTOMATIC TRANSFER SWITCHES CONTENTS AUTOMATIC TRANSFER SWITCHES PART 1 GENERAL 1.1 Related Documents 1.2 Summary 1.3 References 1.4 Quality Assurance 1.5 Submittals 1.6 Delivery, Storage and Handling 1.7 Instructions And Training

More information

UFGS (August 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

UFGS (August 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-21 21 00.00 40 (August 2010) --------------------------------- Preparing Activity: NASA Superseding UFGS-21 21 00.00 40 (August 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

SECTION AUTOMATIC TRANSFER SWITCHES PART 1 - GENERAL

SECTION AUTOMATIC TRANSFER SWITCHES PART 1 - GENERAL SECTION 16400 AUTOMATIC TRANSFER SWITCHES 1.01 RELATED DOCUMENTS PART 1 - GENERAL A. Drawings and general provisions of Contract, including General Conditions and Division 1 Specification sections, apply

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 63.00 20 (October 2007) ---------------------------------- Preparing Activity: NAVFAC Superseding UFGS-28 31 63.00 20 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-02 66 00 (February 2010) ----------------------------- Preparing Activity: USACE Superseding UFGS-02 66 00 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 82 16.00 40 (May 2016) ------------------------------ Preparing Activity: NASA Superseding UFGS-23 82 16.00 40 (May 2013) UFGS-23 82 16 (February 2011) UNIFIED FACILITIES

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-11 31 13 (August 2017) --------------------------- Preparing Activity: NAVFAC Superseding UFGS-11 31 13 (August 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS References

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCESA / NASA UFGS-28 31 00.00 10 (November 2008) ----------------------------------- Preparing Activity: USACE Superseding UFGS-28 31 00.00 10 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 74.00 20 (February 2010) ----------------------------------- Preparing Activity: NAVFAC Superseding UFGS-28 31 74.00 20 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

SECTION ISOLATED POWER SYSTEMS

SECTION ISOLATED POWER SYSTEMS PART 1 - GENERAL 1.1 DESCRIPTION SECTION 26 20 11 ISOLATED POWER SYSTEMS SPEC WRITER NOTE: Delete between //---// if not applicable to project. Also, delete any other item or paragraph not applicable to

More information

SECTION DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM

SECTION DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM SECTION 283111 - DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions and Division

More information

SECTION FIRE ALARM SYSTEMS

SECTION FIRE ALARM SYSTEMS SECTION 28 3100 PART 1 -GENERAL 1.01 RELATED DOCUMENTS Drawings and general provisions of the Contract, including General and Supplementary Conditions and Division 1 Specification Sections, apply to this

More information

SECTION (13730) - INTRUSION DETECTION

SECTION (13730) - INTRUSION DETECTION PART 1 GENERAL 1.01 SUMMARY A. Section Includes: SECTION 28 16 00 (13730) - INTRUSION DETECTION 1. Intrusion Detection Sensors 2. Signal Equipment 3. System Controls 4. Alarm Displays 5. Alarm Indicating

More information

Update all extract references to NFPA documents (including NFPA 72) in Chapter 3 and related annex material to the latest editions.

Update all extract references to NFPA documents (including NFPA 72) in Chapter 3 and related annex material to the latest editions. 11/16/12 TerraView First Revision No. 15-NFPA 720-2012 [ Global Input ] Update all extract references to NFPA documents (including NFPA 72) in Chapter 3 and related annex material to the latest editions.

More information

SECTION P01 LIGHTING AND APPLIANCE PANELBOARDS - A-SERIES

SECTION P01 LIGHTING AND APPLIANCE PANELBOARDS - A-SERIES PART 1 GENERAL A. The requirements of the Contract, Division 1, and Division 16 apply to work in this Section. 1.01 SECTION INCLUDES A. Lighting and appliance panelboards 1.02 RELATED SECTIONS A. 16475,

More information

SECTION INTRUSION DETECTION

SECTION INTRUSION DETECTION (NOTE TO DESIGNER: These Specifications are basic minimum criteria to be met in preparing the final specifications for this section, which is the responsibility of the Designer.) SECTION 28 16 00 INTRUSION

More information

SECTION PANELBOARDS. A. Drawings and general provisions of the Contract, including General and Supplementary Conditions, apply to this Section.

SECTION PANELBOARDS. A. Drawings and general provisions of the Contract, including General and Supplementary Conditions, apply to this Section. PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions, apply to this Section. 1.2 SUMMARY A. This Section includes the

More information

NORTHWESTERN UNIVERSITY PROJECT NAME JOB # ISSUED: 03/29/2017

NORTHWESTERN UNIVERSITY PROJECT NAME JOB # ISSUED: 03/29/2017 SECTION 26 3323 - CENTRAL BATTERY EQUIPMENT [for Evanston campus only] PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions

More information

SECTION (16460) - LOW-VOLTAGE TRANSFORMERS

SECTION (16460) - LOW-VOLTAGE TRANSFORMERS PART 1 GENERAL 1.01 SUMMARY SECTION 26 22 00 (16460) - LOW-VOLTAGE TRANSFORMERS A. Section Includes: 1. Dry-Type Distribution And Specialty Transformers Rated 1000 V And Less. a. General-Purpose Distribution

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-28 31 76 (August 2011) Change 1-08/17 ----------------------------- Preparing Activity: USACE Superseding UFGS-28 31 76 (November 2008) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

NORTHWESTERN UNIVERSITY PROJECT NAME JOB # ISSUED: 11/06/2018

NORTHWESTERN UNIVERSITY PROJECT NAME JOB # ISSUED: 11/06/2018 SECTION 26 2913 - ENCLOSED CONTROLLERS GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions and Division 01 Specification Sections,

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-12 21 00 (August 2017) --------------------------- Preparing Activity: USACE Superseding UFGS-12 21 00 (August 2010) UNIFIED FACILITIES GUIDE SPECIFICATIONS References

More information

SECTION GENERATOR PARALLELING CONTROLS

SECTION GENERATOR PARALLELING CONTROLS PART 1 - GENERAL 1.1 DESCRIPTION SECTION 26 23 13 GENERATOR PARALLELING CONTROLS SPEC WRITER NOTE: Delete between // -- // if not applicable to project. Also delete any other item or paragraph not applicable

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-08 71 63.10 (April 2006) ----------------------------- Preparing Activity: NAVFAC Replacing without change UFGS-08745 (August 2001) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

VACUUM BREAKER MEDIUM VOLTAGE AUTOMATIC TRANSFER SWITCHES

VACUUM BREAKER MEDIUM VOLTAGE AUTOMATIC TRANSFER SWITCHES Part One General 1.01 Scope A. It is the intent of this specification to provide a medium voltage automatic transfer system. B. All components, testing and services specified and required for a complete

More information

SECTION INTRUSION DETECTION SYSTEM

SECTION INTRUSION DETECTION SYSTEM SECTION 13845 INTRUSION DETECTION SYSTEM PART 1 GENERAL 1.01 SUMMARY A. Section Includes: A complete, operable, tested intrusion detection system, bearing Underwriters Laboratories (UL) mercantile listing

More information

1.3 REFERENCE STANDARDS

1.3 REFERENCE STANDARDS SECTION 28 4600 FIRE DETECTION AND ALARM PART 1 -GENERAL 1.1 SECTION INCLUDES A. Fire alarm system design and installation, including all components, wiring, and conduit. B. Circuits from protected premises

More information

SETION EMERGENCY LIGHTING NATIONAL FIRE PROTECTION ASSOCIATION (NEPA) (2006) Life Safety Code, 2006 Edition

SETION EMERGENCY LIGHTING NATIONAL FIRE PROTECTION ASSOCIATION (NEPA) (2006) Life Safety Code, 2006 Edition SETION 16420 PART 1 - GENERAL 1.01 REFERENCES The publications listed below form a part of this specification to the extent referenced. The publications are referred to within the text by the basic designation

More information

Smoke Detector Activation of any smoke detector shall start the alarm verification mode.

Smoke Detector Activation of any smoke detector shall start the alarm verification mode. Description: The purpose of the section is to provide the UMCP Design Standards for the design and implementation of Fire Alarm Systems at the UMCP campus. Related Sections: TBD Effective Date: July 10,

More information

PART GENERAL 1.01 SECTION INCLUDES

PART GENERAL 1.01 SECTION INCLUDES Specification Number: 26 24 16.06 Product Name: Emergency Lighting Control NQ Circuit Panelboards: 240 Vac, 48 Vdc Maximum SECTION 26 24 16.06 Emergency Lighting Control NQ Circuit Panelboards: 240 Vac,

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-11 31 13 (August 2008) --------------------------- Preparing Activity: NAVFAC Superseding UFGS-11 31 13 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS References

More information

UltraLITE Model ELU Centralized Emergency Lighting Inverter 4.2 KW- 5 KW

UltraLITE Model ELU Centralized Emergency Lighting Inverter 4.2 KW- 5 KW 12/23/16 Rev 9 UltraLITE Model ELU General Specification 4.2 KW to 5 KW UltraLITE Model ELU Centralized Emergency Lighting Inverter 4.2 KW- 5 KW 1.0 General General Specification This specification describes

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-21 21 00.00 40 (November 2016) ----------------------------------- Preparing Activity: NASA Superseding UFGS-21 21 00.00 40 (November 2013) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

SECTION AUTOMATIC TRANSFER SWITCHES

SECTION AUTOMATIC TRANSFER SWITCHES SECTION 26 36 23 AUTOMATIC TRANSFER SWITCHES PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. General provisions of the Contract, including General and Supplementary Conditions and Division 01 Specification Sections,

More information

Lake County / Multi-Department Storage Facility / Project / December 12, 2016 SECTION DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM

Lake County / Multi-Department Storage Facility / Project / December 12, 2016 SECTION DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM PART 1 - GENERAL 1.1 RELATED DOCUMENTS SECTION 283111 A. Drawings and general provisions of the Contract, including General and Supplementary Conditions and Division 01 Specification Sections, apply to

More information

Fort Rouge Leisure Centre Section HVAC Upgrades Phase 2 Page 1 of 5 Bid Opportunity No March 2013 FIRE ALARM SYSTEMS

Fort Rouge Leisure Centre Section HVAC Upgrades Phase 2 Page 1 of 5 Bid Opportunity No March 2013 FIRE ALARM SYSTEMS HVAC Upgrades Phase 2 Page 1 of 5 Part 1 General 1.1 SUMMARY.1 Section Includes:.1 Materials and installation for fire alarm systems upgrades..2 Audible signal devices..3 End-of-line devices..4 Sustainable

More information

Hinesville First United Methodist Church SECTION DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM

Hinesville First United Methodist Church SECTION DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM SECTION 28 3111 DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM PART 1 - GENERAL 1.01 SUMMARY A. Section Includes: 1. Fire-alarm control unit. 2. Manual fire-alarm boxes. 3. System smoke detectors. 4. Heat detectors.

More information

SECTION SOLAR PHOTOVOLTAIC (PV) POWER GENERATION SYSTEM

SECTION SOLAR PHOTOVOLTAIC (PV) POWER GENERATION SYSTEM SECTION 48 14 14 SOLAR PHOTOVOLTAIC (PV) POWER GENERATION SYSTEM PART 1 GENERAL 1.1 SECTION INCLUDES The work of this section consists of furnishing a complete Solar Photovoltaic (PV) Power Generation

More information

PWGSC Ontario MULTIPLEX FIRE ALARM SYSTEM Sect Region Project Page 1 Number R

PWGSC Ontario MULTIPLEX FIRE ALARM SYSTEM Sect Region Project Page 1 Number R Region Project Page 1 PART 1 - GENERAL 1.1 REFERENCES.1 CAN/ULC-S524-2006, Standard for the Installation of Fire Alarm Systems..2 CAN/ULC-S525-2007, Audible Signal Device for Fire Alarm Systems..3 CAN/ULC-S526-2007,

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-21 21 02.00 20 (November 2009) ----------------------------------- Preparing Activity: NAVFAC Superseding UFGS-21 21 02.00 20 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

SPECIFICATION MICROMIST FIRE SUPPRESSION SYSTEM WITH SHP-PRO CONTROL PANEL

SPECIFICATION MICROMIST FIRE SUPPRESSION SYSTEM WITH SHP-PRO CONTROL PANEL SECTION 1 - GENERAL CONDITIONS I. SCOPE: This specification outlines the requirements for a Fike Micromist Water Mist Fire Suppression System with automatic detection and control. The work described in

More information

NFPA Changes

NFPA Changes Chapter 27, Public Fire Emergency Alarm Reporting Systems Summary. Chapter 27 was Chapter 9 in NFPA 72-2007. The word fire is replaced by the word emergency. The term public fire service communications

More information

SECTION : FIRE ALARM & DETECTION SYSTEMS

SECTION : FIRE ALARM & DETECTION SYSTEMS SECTION 28 31 10: FIRE ALARM & DETECTION SYSTEMS 1. GENERAL A. This section applies to fire detection/alarm system and carbon monoxide system components and equipment installed during new construction

More information

NORTH HARRIS COUNTY REGIONAL WATER AUTHORITY. Section CHLORINE GAS LEAK DETECTOR

NORTH HARRIS COUNTY REGIONAL WATER AUTHORITY. Section CHLORINE GAS LEAK DETECTOR Section 11263 PART 1 GENERAL 1.01 SUMMARY This Section includes the furnishing and installation of chlorine leak detectors as shown on Plans and specified herein. 1.02 MEASUREMENT AND PAYMENT No separate

More information

1. Division 26 Section Electrical General Requirements. 2. Division 26 Section "Wiring Devices" for wall-box dimmers and manual light switches.

1. Division 26 Section Electrical General Requirements. 2. Division 26 Section Wiring Devices for wall-box dimmers and manual light switches. PART 1 - GENERAL... 1 1.1 RELATED DOCUMENTS... 1 1.2 SUMMARY... 1 1.3 REFERENCES... 2 1.4 DEFINITIONS... 2 1.5 SUBMITTALS... 2 1.6 QUALITY ASSURANCE... 3 1.7 COORDINATION... 3 1.8 DELIVERY, STORAGE, AND

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-21 21 01.00 20 (November 2009) ----------------------------------- Preparing Activity: NAVFAC Superseding UFGS-21 21 01.00 20 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

SECTION DOMESTIC WATER PRESSURE BOOSTING SYSTEMS (VFD) PART 1 - GENERAL 1.1 SUMMARY

SECTION DOMESTIC WATER PRESSURE BOOSTING SYSTEMS (VFD) PART 1 - GENERAL 1.1 SUMMARY SECTION 22 11 23.13 DOMESTIC WATER PRESSURE BOOSTING PART 1 - GENERAL 1.1 SUMMARY A. Where utility water pressure cannot adequately meet the pressure requirements of the domestic water systems and where

More information

CARD ACCESS CONTROL SYSTEM

CARD ACCESS CONTROL SYSTEM SECTION 13851 CARD ACCESS CONTROL SYSTEM PART 1 GENERAL 1.01 SUMMARY A. Section Includes: A complete, operable, tested, integrated proximity access control system, to operate on a proximity principle where

More information

SECTION INTERIOR LIGHTING

SECTION INTERIOR LIGHTING SECTION 26 51 00 INTERIOR LIGHTING PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions and Division 01 Specification

More information

1. Distribution panelboards. 2. Lighting and appliance branch-circuit panelboards. 3. Load centers.

1. Distribution panelboards. 2. Lighting and appliance branch-circuit panelboards. 3. Load centers. September 2012, rev. 00 26 2416 Panelboards PART 1. GENERAL 1.01 Summary A. Section includes: 1.02 Definitions 1. Distribution panelboards. 2. Lighting and appliance branch-circuit panelboards. 3. Load

More information

SECTION LOW VOLTAGE POWER PANELBOARDS - SPECTRA

SECTION LOW VOLTAGE POWER PANELBOARDS - SPECTRA PART 1 GENERAL A. The requirements of the Contract, Division 1, and Division 16 apply to work in this Section. 1.01 SECTION INCLUDES A. Low voltage power panelboards 1.02 RELATED SECTIONS 1.03 REFERENCES

More information

**************************************************************************

************************************************************************** USACE / NAVFAC / AFCEC / NASA UFGS-23 52 43.00 20 (May 2015) Change 1-08/15 ------------------------------- Preparing Activity: NAVFAC Superseding UFGS-23 52 43.00 20 (July 2006) UNIFIED FACILITIES GUIDE

More information

Bold items are particular to the City of Euless

Bold items are particular to the City of Euless EULESS FIRE DEPARTMENT FIRE MARSHAL S OFFICE INFORMATION LINE: Revised 8/2004 Fire Chief Lee Koontz Fire Marshal Paul Smith EFD-FMO 3-1 2003 International Fire & Building Code as Amended NFPA Standards

More information

1. Floor above/floor below notification. 2. Private alarm notification. 3. Not Used 4. Voice alarm notification. 5. Not Used.

1. Floor above/floor below notification. 2. Private alarm notification. 3. Not Used 4. Voice alarm notification. 5. Not Used. PART 1 GENERAL 1.01 Scope of Standard A. This Standard is intended to assure that fire alarm and signaling systems at Sam Houston State University provide the highest level of life safety possible. This

More information

UNIFIED FACILITIES GUIDE SPECIFICATION

UNIFIED FACILITIES GUIDE SPECIFICATION USACE / NAVFAC / AFCEC / NASA UFGS-21 13 21.00 20 (November 2009) ----------------------------------- Preparing Activity: NAVFAC Superseding UFGS-21 13 21.00 20 (April 2006) UNIFIED FACILITIES GUIDE SPECIFICATION

More information

SECTION FIRE ALARM AND SMOKE DETECTION SYSTEMS

SECTION FIRE ALARM AND SMOKE DETECTION SYSTEMS PART 1 GENERAL 1.1 SECTION INCLUDES A. Fire alarm and smoke detection systems 1.2 REFERENCES A. NFPA 72 B. NFPA 101 1.3 REGULATORY REQUIREMENTS A. System: UL listed B. Conform to requirements of NFPA 101

More information

ONYX FirstVision Specification Interactive Firefighters Display

ONYX FirstVision Specification Interactive Firefighters Display ONYX FirstVision Specification Interactive Firefighters Display NOTIFIER is a registered trademark, and ONYX FirstVision, NOTI FIRE NET, and VeriFire are trademarks of Honeywell International Inc. Microsoft

More information

Across-the-Line SERIES MP300 Combined Manual and Automatic

Across-the-Line SERIES MP300 Combined Manual and Automatic Across-the-Line SERIES MP300 Combined Manual and Automatic Metron Fire Pump Controllers conform to the latest requirements of National Fire Protection Association s Standard for Centrifugal Fire Pumps

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-23 74 33.00 40 (May 2017) ----------------------------------- Preparing Activity: NASA Superseding UFGS-23 74 33.00 40 (February 2011) UFGS-23 74 33 (November 2009) UNIFIED

More information

SECTION EXTERIOR LIGHTING

SECTION EXTERIOR LIGHTING SECTION 26 56 00 PART 1 - GENERAL 1.1 DESCRIPTION This section specifies the furnishing, installation, and connection of exterior luminaries, controls, poles and supports. 1.2 RELATED WORK A. Section 26

More information

SECTION CLEAN AGENT FIRE SUPPRESSION SYSTEMS

SECTION CLEAN AGENT FIRE SUPPRESSION SYSTEMS SECTION 21 22 00 CLEAN AGENT FIRE SUPPRESSION SYSTEMS PART 1 - GENERAL 1.1 DESCRIPTION SPEC WRITER NOTE: Delete between // --- // if not applicable to the project. Also delete any other item or paragraph

More information

DONALD H. BERG, ARCHITECT

DONALD H. BERG, ARCHITECT DONALD H. BERG, ARCHITECT DVA PROJECT 632-CSI-402 PET/CT ROOM #A0-10 RENOVATION BASEMENT LEVEL, BUILDING 200 ARCHITECT S PROJECT No. 0917-02 ADDENDUM NO. 1 JUNE 25, 2018 Page 1 of 1 ARCHITECTURAL 1. Specifications:

More information

Moreno Valley Fire Department Fire Prevention Bureau. New and Existing Fire Alarm & Signaling Systems Guideline

Moreno Valley Fire Department Fire Prevention Bureau. New and Existing Fire Alarm & Signaling Systems Guideline Moreno Valley Fire Department Guideline Approved and Authorized By: Adria Reinertson, Fire Marshal Issued: May 8, 2017 Alarm & Signaling Systems PURPOSE Fire alarm and signaling systems are designed to

More information

Michigan State University Construction Standards FIRE DETECTION AND ALARM PAGE

Michigan State University Construction Standards FIRE DETECTION AND ALARM PAGE PAGE 283100-1 SECTION 283100 - DIGITAL, ADDRESSABLE FIRE-ALARM SYSTEM PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions

More information

NORTHWESTERN UNIVERSITY PROJECT NAME JOB # ISSUED: 03/29/2017

NORTHWESTERN UNIVERSITY PROJECT NAME JOB # ISSUED: 03/29/2017 SECTION 21 2400CA - CLEAN AGENT CHEMICAL SUPPRESSION SYSTEMS PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions and

More information

Soft Start Series MP700 Solid State, Reduced Voltage

Soft Start Series MP700 Solid State, Reduced Voltage Metron Fire Pump Controls and Accessories Soft Start Series MP700 Solid State, Reduced Voltage Metron Fire Pump Controllers conform to the latest requirements of National Fire Protection Association s

More information

University of Houston Master Construction Specifications Insert Project Name SECTION DRY-PIPE FIRE SPRINKLER SYSTEM PART 1 - GENERAL

University of Houston Master Construction Specifications Insert Project Name SECTION DRY-PIPE FIRE SPRINKLER SYSTEM PART 1 - GENERAL SECTION 21 13 16 DRY-PIPE FIRE SPRINKLER SYSTEM PART 1 - GENERAL 1.1 RELATED DOCUMENTS: A. The Conditions of the Contract and applicable requirements of Division 1, "General Requirements", and Section

More information

B. Section Transfer Switches: Automatic transfer switch.

B. Section Transfer Switches: Automatic transfer switch. SECTION 263213 - ENGINE GENERATORS PART 1 GENERAL 1.1 SECTION INCLUDES A. Packaged engine generator set. B. Exhaust silencer and fittings. C. Remote control panel. D. Battery and charger. E. Weatherproof

More information

Control Panel. 1.0 GENERAL SCOPE OF WORK Introduction... 2

Control Panel. 1.0 GENERAL SCOPE OF WORK Introduction... 2 Architectural & Engineering Specifications Control Panel 1.0 GENERAL... 2 1.1 SCOPE OF WORK... 2 1.1.1 Introduction... 2 1.2 GENERAL CONDITIONS... 2 1.2.1 After-Sales Support... 2 1.2.2 Quality assurance...

More information

SECTION AIR DOORS

SECTION AIR DOORS SECTION 23 34 33 AIR DOORS Berner Series VSA air doors are designed for openings up to 12 ft for environmental separation and up to 10 ft for insect control. Berner Series VSB air doors are designed for

More information

SECTION CENTRAL BATTERY INVERTERS. A. This Section includes fast-transfer central battery inverters with the following features:

SECTION CENTRAL BATTERY INVERTERS. A. This Section includes fast-transfer central battery inverters with the following features: PART 1 - GENERAL 1.1 SUMMARY A. This Section includes fast-transfer central battery inverters with the following features: 1. Emergency-only circuits. 1.2 DEFINITIONS A. LCD: Liquid-crystal display. B.

More information

PROJ. NO SECTION PAGING, SPEAKERS AND HARD-WIRED CLOCK SYSTEMS

PROJ. NO SECTION PAGING, SPEAKERS AND HARD-WIRED CLOCK SYSTEMS SECTION 26 92 50 PAGING, SPEAKERS AND HARD-WIRED CLOCK SYSTEMS PART 1 - GENERAL 1.1 RELATED DOCUMENTS A. Drawings and general provisions of the Contract, including General and Supplementary Conditions

More information

UNIFIED FACILITIES GUIDE SPECIFICATIONS

UNIFIED FACILITIES GUIDE SPECIFICATIONS USACE / NAVFAC / AFCEC / NASA UFGS-21 22 00.00 20 (May 2011) ----------------------------------- Preparing Activity: NAVFAC Superseding UFGS-21 22 00.00 20 (November 2009) UNIFIED FACILITIES GUIDE SPECIFICATIONS

More information

2016 CDM Smith All Rights Reserved July 2016 SECTION FIBER OPTIC DATA NETWORK

2016 CDM Smith All Rights Reserved July 2016 SECTION FIBER OPTIC DATA NETWORK PART 1 GENERAL 1.01 SCOPE OF WORK SECTION 27 12 23 FIBER OPTIC DATA NETWORK A. Furnish, install, terminate, and test all fiber optic equipment and cabling necessary for a complete and functional data highway

More information